305 lines
7.5 KiB
C
305 lines
7.5 KiB
C
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/*++
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Copyright (c) 1996 Microsoft Corporation
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Module Name:
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util.c
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Abstract: NULL filter driver -- boilerplate code
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Author:
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ervinp
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Environment:
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Kernel mode
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Revision History:
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--*/
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#include <WDM.H>
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#include "filter.h"
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#ifdef ALLOC_PRAGMA
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#pragma alloc_text(PAGE, CallNextDriverSync)
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#pragma alloc_text(PAGE, CallDriverSync)
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#endif
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NTSTATUS CallNextDriverSync(struct DEVICE_EXTENSION *devExt, PIRP irp)
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/*++
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Routine Description:
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Pass the IRP down to the next device object in the stack
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synchronously, and bump the pendingActionCount around
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the call to prevent the current device object from getting
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removed before the IRP completes.
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Arguments:
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devExt - device extension of one of our device objects
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irp - Io Request Packet
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Return Value:
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NT status code, indicates result returned by lower driver for this IRP.
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--*/
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{
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NTSTATUS status;
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PAGED_CODE();
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IncrementPendingActionCount(devExt);
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status = CallDriverSync(devExt->physicalDevObj, irp);
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DecrementPendingActionCount(devExt);
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return status;
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}
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NTSTATUS CallDriverSync(PDEVICE_OBJECT devObj, PIRP irp)
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/*++
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Routine Description:
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Call IoCallDriver to send the irp to the device object;
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then, synchronize with the completion routine.
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When CallDriverSync returns, the action has completed
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and the irp again belongs to the current driver.
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NOTE: In order to keep the device object from getting freed
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while this IRP is pending, you should call
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IncrementPendingActionCount() and
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DecrementPendingActionCount()
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around the CallDriverSync call.
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Arguments:
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devObj - targetted device object
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irp - Io Request Packet
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Return Value:
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NT status code, indicates result returned by lower driver for this IRP.
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--*/
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{
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KEVENT event;
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NTSTATUS status;
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PAGED_CODE();
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KeInitializeEvent(&event, NotificationEvent, FALSE);
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IoSetCompletionRoutine( irp,
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CallDriverSyncCompletion,
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&event, // context
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TRUE, TRUE, TRUE);
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status = IoCallDriver(devObj, irp);
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KeWaitForSingleObject( &event,
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Executive, // wait reason
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KernelMode,
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FALSE, // not alertable
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NULL ); // no timeout
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status = irp->IoStatus.Status;
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ASSERT(NT_SUCCESS(status));
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return status;
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}
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NTSTATUS CallDriverSyncCompletion(
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IN PDEVICE_OBJECT devObjOrNULL,
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IN PIRP irp,
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IN PVOID context)
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/*++
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Routine Description:
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Completion routine for CallDriverSync.
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Arguments:
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devObjOrNULL -
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Usually, this is this driver's device object.
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However, if this driver created the IRP,
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there is no stack location in the IRP for this driver;
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so the kernel has no place to store the device object;
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** so devObj will be NULL in this case **.
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irp - completed Io Request Packet
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context - context passed to IoSetCompletionRoutine by CallDriverSync.
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Return Value:
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NT status code, indicates result returned by lower driver for this IRP.
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--*/
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{
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PKEVENT event = context;
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ASSERT(irp->IoStatus.Status != STATUS_IO_TIMEOUT);
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KeSetEvent(event, 0, FALSE);
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return STATUS_MORE_PROCESSING_REQUIRED;
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}
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VOID IncrementPendingActionCount(struct DEVICE_EXTENSION *devExt)
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/*++
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Routine Description:
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Increment the pendingActionCount for a device object.
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This keeps the device object from getting freed before
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the action is completed.
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Arguments:
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devExt - device extension of device object
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Return Value:
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VOID
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--*/
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{
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ASSERT(devExt->pendingActionCount >= 0);
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InterlockedIncrement(&devExt->pendingActionCount);
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}
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VOID DecrementPendingActionCount(struct DEVICE_EXTENSION *devExt)
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/*++
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Routine Description:
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Decrement the pendingActionCount for a device object.
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This is called when an asynchronous action is completed
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AND ALSO when we get the REMOVE_DEVICE IRP.
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If the pendingActionCount goes to -1, that means that all
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actions are completed and we've gotten the REMOVE_DEVICE IRP;
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in this case, set the removeEvent event so we can finish
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unloading.
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Arguments:
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devExt - device extension of device object
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Return Value:
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VOID
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--*/
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{
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ASSERT(devExt->pendingActionCount >= 0);
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InterlockedDecrement(&devExt->pendingActionCount);
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if (devExt->pendingActionCount < 0){
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/*
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* All pending actions have completed and we've gotten
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* the REMOVE_DEVICE IRP.
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* Set the removeEvent so we'll stop waiting on REMOVE_DEVICE.
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*/
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ASSERT((devExt->state == STATE_REMOVING) ||
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(devExt->state == STATE_REMOVED));
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KeSetEvent(&devExt->removeEvent, 0, FALSE);
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}
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}
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VOID RegistryAccessSample(PDEVICE_OBJECT devObj)
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/*++
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Routine Description:
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SAMPLE showing how to access the device-specific registry key
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Arguments:
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devObj - device object pointer
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NOTE: This must not be the functional device object
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created by this filter driver, because that
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device object does not have a devnode area
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in the registry; pass the device object of
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the device object for which this driver is
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a filter. This is the device object passed
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to VA_AddDevice.
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Return Value:
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VOID
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--*/
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{
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NTSTATUS status;
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HANDLE hRegDevice;
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status = IoOpenDeviceRegistryKey( devObj,
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PLUGPLAY_REGKEY_DEVICE,
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KEY_READ,
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&hRegDevice);
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if (NT_SUCCESS(status)){
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UNICODE_STRING keyName;
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PKEY_VALUE_FULL_INFORMATION keyValueInfo;
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ULONG keyValueTotalSize, actualLength;
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RtlInitUnicodeString(&keyName, L"SampleFilterParam");
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keyValueTotalSize = sizeof(KEY_VALUE_FULL_INFORMATION) +
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keyName.Length*sizeof(WCHAR) +
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sizeof(ULONG);
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keyValueInfo = ExAllocatePoolWithTag( PagedPool,
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keyValueTotalSize,
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FILTER_TAG);
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if (keyValueInfo){
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status = ZwQueryValueKey( hRegDevice,
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&keyName,
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KeyValueFullInformation,
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keyValueInfo,
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keyValueTotalSize,
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&actualLength);
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if (NT_SUCCESS(status)){
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ULONG value;
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ASSERT(keyValueInfo->Type == REG_DWORD);
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ASSERT(keyValueInfo->DataLength == sizeof(ULONG));
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value = *((PULONG)(((PCHAR)keyValueInfo)+keyValueInfo->DataOffset));
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DBGOUT(("RegistryAccessSample: value is %xh.", value));
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}
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else {
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DBGOUT(("ZwQueryValueKey failed with %xh.", status));
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}
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ExFreePool(keyValueInfo);
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}
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else {
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ASSERT(keyValueInfo);
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}
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ZwClose(hRegDevice);
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}
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else {
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DBGOUT(("IoOpenDeviceRegistryKey failed with %xh.", status));
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}
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}
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